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The biological function and potential mechanism of long non‐coding RNAs in cardiovascular disease

机译:长期非编码RNA在心血管疾病中的生物学功能及潜在机制

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摘要

Long non‐coding RNAs (lncRNAs), as part of the family of non‐protein‐coding transcripts, are implicated in the occurrence and progression of several cardiovascular diseases (CVDs). With recent advances in lncRNA research, these molecules are purported to regulate gene expression at multiple levels, thereby producing beneficial or detrimental biological effects during CVD pathogenesis. At the transcriptional level, lncRNAs affect gene expression by interacting with DNA and proteins, for example, components of chromatin‐modifying complexes, or transcription factors affecting chromatin status. These potential mechanisms suggest that lncRNAs guide proteins to specific gene loci (eg promoter regions), or forestall proteins to specific genomic sites via DNA binding. Additionally, some lncRNAs are required for correct chromatin conformation, which occurs via chromatin looping in enhancer‐like models. At the post‐transcriptional level, lncRNAs interact with RNA molecules, mainly microRNAs (miRNAs) and mRNAs, potentially regulating CVD pathophysiological processes. Moreover, lncRNAs appear to post‐transcriptionally modulate gene expression by participating in mRNA splicing, stability, degradation and translation. Thus, the purpose of this review is to provide a comprehensive summary of lncRNAs implicated in CVD biological processes, with an emphasis on potential mechanisms of action.
机译:长的非编码RNA(lncRNAs),作为家庭非蛋白质编码转录物的一部分,在若干心血管疾病(心血管病)的发生和进展有牵连。随着lncRNA研究的最新进展,这些分子被声称以调节在多个级别的基因表达,从而产生CVD发病期间有益或有害生物学效应。在转录水平,lncRNAs通过与DNA和蛋白质相互作用的影响基因表达,例如,染色质修饰复合物,或转录因子的部件影响染色质状态。这些潜在机制表明,通过DNA lncRNAs引导蛋白质到特定基因座(例如启动子区域),或垄断蛋白质到特定的基因组位点的结合。此外,需要正确染色质构,它通过染色质循环发生在增强样车型有些lncRNAs。在转录后水平,lncRNAs与RNA分子,主要是微RNA(miRNA)和mRNA的,潜在地调节CVD病理生理过程相互作用。此外,lncRNAs出现通过参与mRNA剪接,稳定性,降解和翻译转录后调节基因表达。因此,本次审查的目的是提供CVD生物过程牵连lncRNAs的全面总结,对潜在的行动机制的重点。

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